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Journal article

Towards the rational design of palladium-N-heterocyclic carbene catalysts by a combined experimental and computational approach

Abstract

A combined experimental and computational approach towards the development of Pd–NHC catalysts is described. A range of benzimidazolylidinium ligands incorporating electron-rich and electron-poor substituents were prepared and evaluated in the Suzuki reaction. The most electron-rich ligand showed the highest catalytic activity. Based on this information, the first alkyl–alkyl Negishi cross-coupling reaction protocol was developed. Evaluation of N,N′-diaryl-(4,5-dihydro)imidazolylilidinium ligands showed a strong dependence on the steric topography around the metal centre. A computational study of the most active ligand in the Negishi reaction, its Pd(0) and PdCl2-complexes and related structures were modelled at the B3LYP/DZVP and HF/3-21G levels of theory. The potential energy hypersurfaces flattened with increase in ligand size. Binding energies were computed for carbene/Pd(0) adducts (in the range ∼31–40kcalmol−1), roughly double that for PH3 (∼16kcalmol−1). Weak intramolecular interactions were found using AIM analyses.

Authors

O'Brien CJ; Kantchev EAB; Chass GA; Hadei N; Hopkinson AC; Organ MG; Setiadi DH; Tang T-H; Fang D-C

Journal

Tetrahedron, Vol. 61, No. 41, pp. 9723–9735

Publisher

Elsevier

Publication Date

October 10, 2005

DOI

10.1016/j.tet.2005.07.101

ISSN

0040-4020

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